[#217] pkg/eacl: Change interface for working with keys on Target and Record
In previous implementation Target provided Keys/SetKeys methods which allowed working with ECDSA keys. There was also a bug in the NewTargetFromV2 function when the binary key differed in format from the ECDSA key. New BinaryKeys/SetBinaryKeys methods work with binary keys. To work with ECDSA keys added functions TargetECDSAKeys/SetTargetECDSAKeys. Old methods are left and marked deprecated. Type Record provided an interface for adding a Target by Role and a list of ECDSA keys. New SetTargets method allows to set the list of Target's, AddTarget function allows to add a single Target. AddFormedTarget works like old AddTarget method, which is now deprecated. Signed-off-by: Leonard Lyubich <leonard@nspcc.ru>
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4 changed files with 134 additions and 43 deletions
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@ -26,6 +26,11 @@ func (r Record) Targets() []*Target {
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return r.targets
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}
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// SetTargets sets list of target subjects to apply ACL rule to.
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func (r *Record) SetTargets(targets ...*Target) {
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r.targets = targets
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}
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// Filters returns list of filters to match and see if rule is applicable.
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func (r Record) Filters() []*Filter {
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return r.filters
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@ -52,17 +57,25 @@ func (r *Record) SetAction(action Action) {
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}
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// AddTarget adds target subject with specified Role and key list.
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//
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// Deprecated: use AddFormedTarget instead.
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func (r *Record) AddTarget(role Role, keys ...ecdsa.PublicKey) {
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t := &Target{
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role: role,
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keys: make([]ecdsa.PublicKey, 0, len(keys)),
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}
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AddFormedTarget(r, role, keys...)
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}
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for i := range keys {
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t.keys = append(t.keys, keys[i])
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}
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// AddRecordTarget adds single Target to the Record.
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func AddRecordTarget(r *Record, t *Target) {
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r.SetTargets(append(r.Targets(), t)...)
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}
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r.targets = append(r.targets, t)
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// AddFormedTarget forms Target with specified Role and list of
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// ECDSA public keys and adds it to the Record.
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func AddFormedTarget(r *Record, role Role, keys ...ecdsa.PublicKey) {
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t := NewTarget()
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t.SetRole(role)
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SetTargetECDSAKeys(t, ecdsaKeysToPtrs(keys)...)
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AddRecordTarget(r, t)
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}
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func (r *Record) addFilter(from FilterHeaderType, m Match, keyTyp filterKeyType, key string, val fmt.Stringer) {
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@ -15,7 +15,10 @@ func TestRecord(t *testing.T) {
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record.SetAction(ActionAllow)
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record.AddFilter(HeaderFromRequest, MatchStringEqual, "A", "B")
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record.AddFilter(HeaderFromRequest, MatchStringNotEqual, "C", "D")
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record.AddTarget(RoleSystem)
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target := NewTarget()
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target.SetRole(RoleSystem)
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AddRecordTarget(record, target)
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v2 := record.ToV2()
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require.NotNil(t, v2)
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@ -38,8 +41,11 @@ func TestRecord(t *testing.T) {
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})
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}
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func TestRecord_AddTarget(t *testing.T) {
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targets := []*Target{
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func TestAddFormedTarget(t *testing.T) {
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items := []struct {
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role Role
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keys []ecdsa.PublicKey
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}{
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{
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role: RoleUnknown,
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keys: []ecdsa.PublicKey{test.DecodeKey(1).PublicKey},
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@ -50,12 +56,26 @@ func TestRecord_AddTarget(t *testing.T) {
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},
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}
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targets := make([]*Target, 0, len(items))
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r := NewRecord()
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for _, target := range targets {
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r.AddTarget(target.Role(), target.Keys()...)
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for _, item := range items {
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tgt := NewTarget()
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tgt.SetRole(item.role)
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SetTargetECDSAKeys(tgt, ecdsaKeysToPtrs(item.keys)...)
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targets = append(targets, tgt)
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AddFormedTarget(r, item.role, item.keys...)
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}
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require.Equal(t, targets, r.Targets())
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tgts := r.Targets()
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require.Len(t, tgts, len(targets))
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for _, tgt := range targets {
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require.Contains(t, tgts, tgt)
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}
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}
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func TestRecord_AddFilter(t *testing.T) {
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@ -77,7 +97,7 @@ func TestRecordEncoding(t *testing.T) {
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r.SetOperation(OperationHead)
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r.SetAction(ActionDeny)
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r.AddObjectAttributeFilter(MatchStringEqual, "key", "value")
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r.AddTarget(RoleSystem, test.DecodeKey(-1).PublicKey)
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AddFormedTarget(r, RoleSystem, test.DecodeKey(-1).PublicKey)
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t.Run("binary", func(t *testing.T) {
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data, err := r.Marshal()
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@ -13,17 +13,88 @@ import (
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// Target is compatible with v2 acl.EACLRecord.Target message.
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type Target struct {
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role Role
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keys []ecdsa.PublicKey
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keys [][]byte
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}
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// SetKeys sets list of public keys to identify target subject.
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func ecdsaKeysToPtrs(keys []ecdsa.PublicKey) []*ecdsa.PublicKey {
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keysPtr := make([]*ecdsa.PublicKey, len(keys))
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for i := range keys {
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keysPtr[i] = &keys[i]
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}
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return keysPtr
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}
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// SetKeys sets list of ECDSA public keys to identify target subject.
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//
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// Deprecated: use SetTargetECDSAKeys instead.
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func (t *Target) SetKeys(keys ...ecdsa.PublicKey) {
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SetTargetECDSAKeys(t, ecdsaKeysToPtrs(keys)...)
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}
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// Keys returns list of ECDSA public keys to identify target subject.
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// If some key has a different format, it is ignored.
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//
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// Deprecated: use TargetECDSAKeys instead.
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func (t *Target) Keys() []ecdsa.PublicKey {
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keysPtr := TargetECDSAKeys(t)
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keys := make([]ecdsa.PublicKey, 0, len(keysPtr))
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for i := range keysPtr {
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if keysPtr[i] != nil {
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keys = append(keys, *keysPtr[i])
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}
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}
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return keys
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}
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// BinaryKeys returns list of public keys to identify
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// target subject in a binary format.
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func (t *Target) BinaryKeys() [][]byte {
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return t.keys
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}
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// SetBinaryKeys sets list of binary public keys to identify
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// target subject.
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func (t *Target) SetBinaryKeys(keys [][]byte) {
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t.keys = keys
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}
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// Keys returns list of public keys to identify target subject.
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func (t Target) Keys() []ecdsa.PublicKey {
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return t.keys
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// SetTargetECDSAKeys converts ECDSA public keys to a binary
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// format and stores them in Target.
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func SetTargetECDSAKeys(t *Target, keys ...*ecdsa.PublicKey) {
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binKeys := t.BinaryKeys()
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ln := len(keys)
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if cap(binKeys) >= ln {
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binKeys = binKeys[:0]
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} else {
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binKeys = make([][]byte, 0, ln)
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}
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for i := 0; i < ln; i++ {
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binKeys = append(binKeys, crypto.MarshalPublicKey(keys[i]))
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}
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t.SetBinaryKeys(binKeys)
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}
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// TargetECDSAKeys interprets binary public keys of Target
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// as ECDSA public keys. If any key has a different format,
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// the corresponding element will be nil.
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func TargetECDSAKeys(t *Target) []*ecdsa.PublicKey {
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binKeys := t.BinaryKeys()
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ln := len(binKeys)
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keys := make([]*ecdsa.PublicKey, ln)
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for i := 0; i < ln; i++ {
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keys[i] = crypto.UnmarshalPublicKey(binKeys[i])
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}
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return keys
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}
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// SetRole sets target subject's role class.
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@ -38,16 +109,10 @@ func (t Target) Role() Role {
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// ToV2 converts Target to v2 acl.EACLRecord.Target message.
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func (t *Target) ToV2() *v2acl.Target {
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keys := make([][]byte, 0, len(t.keys))
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for i := range t.keys {
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key := crypto.MarshalPublicKey(&t.keys[i])
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keys = append(keys, key)
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}
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target := new(v2acl.Target)
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target.SetRole(t.role.ToV2())
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target.SetKeys(keys)
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target.SetKeys(t.keys)
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return target
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}
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@ -66,13 +131,7 @@ func NewTargetFromV2(target *v2acl.Target) *Target {
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}
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t.role = RoleFromV2(target.GetRole())
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v2keys := target.GetKeys()
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t.keys = make([]ecdsa.PublicKey, 0, len(v2keys))
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for i := range v2keys {
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key := crypto.UnmarshalPublicKey(v2keys[i])
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t.keys = append(t.keys, *key)
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}
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t.keys = target.GetKeys()
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return t
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}
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@ -11,22 +11,21 @@ import (
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)
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func TestTarget(t *testing.T) {
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keys := []ecdsa.PublicKey{
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test.DecodeKey(1).PublicKey,
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test.DecodeKey(2).PublicKey,
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keys := []*ecdsa.PublicKey{
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&test.DecodeKey(1).PublicKey,
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&test.DecodeKey(2).PublicKey,
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}
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target := &Target{
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role: RoleSystem,
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keys: keys,
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}
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target := NewTarget()
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target.SetRole(RoleSystem)
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SetTargetECDSAKeys(target, keys...)
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v2 := target.ToV2()
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require.NotNil(t, v2)
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require.Equal(t, v2acl.RoleSystem, v2.GetRole())
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require.Len(t, v2.GetKeys(), len(keys))
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for i, key := range v2.GetKeys() {
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require.Equal(t, key, crypto.MarshalPublicKey(&keys[i]))
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require.Equal(t, key, crypto.MarshalPublicKey(keys[i]))
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}
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newTarget := NewTargetFromV2(v2)
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@ -40,7 +39,7 @@ func TestTarget(t *testing.T) {
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func TestTargetEncoding(t *testing.T) {
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tar := NewTarget()
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tar.SetRole(RoleSystem)
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tar.SetKeys(test.DecodeKey(-1).PublicKey)
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SetTargetECDSAKeys(tar, &test.DecodeKey(-1).PublicKey)
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t.Run("binary", func(t *testing.T) {
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data, err := tar.Marshal()
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